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INTEGRATION OF GRAPHITE FOAMS TO TITANIUM FOR THERMAL MANAGEMENT APPLICATIONS

机译:石墨泡沫对钛的整合热管理应用

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The high-conductivity graphite foams are attractive for thermal management applications in avionic heat sinks and heat exchangers. However, integrating foams in thermal systems requires robust and thermally conductive joints between foam and metallic constituents. In this study, graphite foams with different densities were vacuum brazed to titanium using the active braze alloys, Cusil-ABA and Palcusil-5 (in paste and foil forms). The joint microstructure and elemental composition were examined using optical microscopy (OM) and scanning electron microscopy (SEM) coupled with energy dispersive spectroscopy (EDS) to evaluate joint integrity, interface microstructure, and chemical interaction. The low-density foams exhibited braze penetration with penetration distance increasing with decreasing bulk density. The carbon/braze interfaces were enriched in Ti indicating sound chemical bonding. The overall thermal resistance of foam/Ti joints was estimated using 1-D, steady-state heat conduction analyses for planar geometries. These calculations indicate a marginal effect of braze saturated foam on joint conductivity for practical range of process parameters.
机译:高电导率石墨泡沫对于航空散热器和热交换器中的热管理应用是有吸引力的。然而,在热系统中积分泡沫需要泡沫和金属成分之间的稳健和导热的接头。在该研究中,使用活性钎焊合金,Cusil-ABA和Palcusil-5(以糊剂和箔形式)将具有不同密度的石墨泡沫钎焊至钛。使用光学显微镜(OM)和扫描电子显微镜(SEM)与能量分散光谱(EDS)相结合来检查关节微观结构和元素组合物,以评估关节完整性,界面微观结构和化学相互作用。低密度泡沫呈钎焊距离透过距离随着堆积密度降低而增加。碳/钎焊界面富集在Ti表示声音化学键合。使用1-D的稳态导热分析来估计泡沫/ TI关节的总热阻,用于平面几何形状。这些计算表明钎焊饱和泡沫的边缘效应对工艺参数的实际范围的关节电导率。

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